Allen Jonathan P, Atekwana Estella A, Atekwana Eliot A, Duris Joseph W, Werkema D Dale, Rossbach Silvia
Department of Biological Sciences, Western Michigan University, Kalamazoo, MI 49008-5410, USA.
Appl Environ Microbiol. 2007 May;73(9):2860-70. doi: 10.1128/AEM.01752-06. Epub 2007 Mar 9.
The interdependence between geoelectrical signatures at underground petroleum plumes and the structures of subsurface microbial communities was investigated. For sediments contaminated with light non-aqueous-phase liquids, anomalous high conductivity values have been observed. Vertical changes in the geoelectrical properties of the sediments were concomitant with significant changes in the microbial community structures as determined by the construction and evaluation of 16S rRNA gene libraries. DNA sequencing of clones from four 16S rRNA gene libraries from different depths of a contaminated field site and two libraries from an uncontaminated background site revealed spatial heterogeneity in the microbial community structures. Correspondence analysis showed that the presence of distinct microbial populations, including the various hydrocarbon-degrading, syntrophic, sulfate-reducing, and dissimilatory-iron-reducing populations, was a contributing factor to the elevated geoelectrical measurements. Thus, through their growth and metabolic activities, microbial populations that have adapted to the use of petroleum as a carbon source can strongly influence their geophysical surroundings. Since changes in the geophysical properties of contaminated sediments parallel changes in the microbial community compositions, it is suggested that geoelectrical measurements can be a cost-efficient tool to guide microbiological sampling for microbial ecology studies during the monitoring of natural or engineered bioremediation processes.
研究了地下石油羽状物的地电特征与地下微生物群落结构之间的相互依存关系。对于被轻质非水相液体污染的沉积物,已观察到异常高的电导率值。沉积物地电性质的垂直变化与微生物群落结构的显著变化同时出现,这是通过构建和评估16S rRNA基因文库确定的。对来自污染现场不同深度的四个16S rRNA基因文库以及来自未受污染背景站点的两个文库的克隆进行DNA测序,揭示了微生物群落结构的空间异质性。对应分析表明,包括各种烃降解、互营、硫酸盐还原和异化铁还原种群在内的不同微生物种群的存在是导致地电测量值升高的一个因素。因此,通过其生长和代谢活动,适应以石油为碳源的微生物种群可以强烈影响其地球物理环境。由于污染沉积物的地球物理性质变化与微生物群落组成变化平行,因此建议地电测量可以作为一种经济高效的工具,用于在监测自然或工程生物修复过程期间指导微生物生态学研究的微生物采样。